FLOURY ENDOSPERM24, a heat shock protein 101 (HSP101), is required for starch biosynthesis and endosperm development in rice

Author:

Wu Hongming1,Ren Yulong2ORCID,Dong Hui13,Xie Chen2,Zhao Lei2,Wang Xin2,Zhang Fulin1,Zhang Binglei12,Jiang Xiaokang1,Huang Yunshuai1,Jing Ruonan1,Wang Jian2ORCID,Miao Rong1,Bao Xiuhao1,Yu Mingzhou1,Nguyen Thanhliem1,Mou Changling1,Wang Yunlong13,Wang Yihua13,Lei Cailin2ORCID,Cheng Zhijun2,Jiang Ling13ORCID,Wan Jianmin123ORCID

Affiliation:

1. National Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization Nanjing Agricultural University Nanjing 210095 China

2. State Key Laboratory of Crop Gene Resources and Breeding, Institute of Crop Sciences Chinese Academy of Agricultural Sciences Beijing 100081 China

3. Zhongshan Biological Breeding Laboratory Nanjing 210014 China

Abstract

Summary Endosperm is the main storage organ in cereal grain and determines grain yield and quality. The molecular mechanisms of heat shock proteins in regulating starch biosynthesis and endosperm development remain obscure. Here, we report a rice floury endosperm mutant flo24 that develops abnormal starch grains in the central starchy endosperm cells. Map‐based cloning and complementation test showed that FLO24 encodes a heat shock protein HSP101, which is localized in plastids. The mutated protein FLO24T296I dramatically lost its ability to hydrolyze ATP and to rescue the thermotolerance defects of the yeast hsp104 mutant. The flo24 mutant develops more severe floury endosperm when grown under high‐temperature conditions than normal conditions. And the FLO24 protein was dramatically induced at high temperature. FLO24 physically interacts with several key enzymes required for starch biosynthesis, including AGPL1, AGPL3 and PHO1. Combined biochemical and genetic evidence suggests that FLO24 acts cooperatively with HSP70cp‐2 to regulate starch biosynthesis and endosperm development in rice. Our results reveal that FLO24 acts as an important regulator of endosperm development, which might function in maintaining the activities of enzymes involved in starch biosynthesis in rice.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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